首页> 外文期刊>African Journal of Biotechnology >Relationship between abscisic acid (ABA) concentration and some physiological traits in two wheat cultivars differing in post-anthesis drought-resistance
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Relationship between abscisic acid (ABA) concentration and some physiological traits in two wheat cultivars differing in post-anthesis drought-resistance

机译:花后抗旱性不同的两个小麦品种脱落酸含量与某些生理性状的关系

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This work investigated the effects of endogenous abscisic acid (ABA) and physiologic parameters related to yield in two wheat cultivars (Triticum aestivum?L.), Marvdasht and Zagros (sensitive and tolerant to terminal season drought, respectively) grown in pots under well watered and water-stressed starting from anthesis until maturity. All physiological parameters were affected by drought stress. Results show that water deficits enhanced the senescence by accelerating loss of leaf chlorophyll and soluble proteins and the loss was more in Marvdasht than Zagros. The net CO2?assimilation rate (PN) in flag leaves during water deficit displayed a strict correlation with the drought sensitivity of the genotypes and showed an early reduction in Marvdasht. Water stress resulted in a marked increase just in the ABA content of the drought-sensitive that led to reduced transport of sucrose into the grains and lowered the starch synthesis ability of grains, whereas, sucrose uptake and conversion by grains was stimulated by low ABA concentrations in Zagros. The effect of drought on grain yield was primarily due to the significant reduction in grain weight, particularly in drought-sensitive. The results indicate that grain filling processes under water restriction are limited by low substrate availability and reduced synthesis capacity of the sink. These results raised the possibility that water stress-induced elevated levels of endogenous ABA contribute to reduced grain growth.
机译:这项工作研究了在灌溉条件良好的盆中种植的两个小麦品种(Triticum aestivum?L。)Marvdasht和Zagros(分别对终季干旱敏感和耐受)的内源脱落酸(ABA)和与产量相关的生理参数的影响从花期到成熟都需要浇水。所有生理参数都受到干旱胁迫的影响。结果表明,水分亏缺通过加速叶片叶绿素和可溶性蛋白质的损失而增强了衰老,而Marvdasht的损失比Zagros多。缺水期间旗叶的净CO 2同化率(PN)与基因型的干旱敏感性密切相关,并且Marvdasht提前减少。水分胁迫导致干旱敏感作物的ABA含量显着增加,导致减少了蔗糖向谷物中的运输,降低了谷物的淀粉合成能力,而低ABA浓度刺激了谷物对蔗糖的吸收和转化。在Zagros。干旱对谷物产量的影响主要是由于谷物重量的显着减少,特别是对干旱敏感的谷物。结果表明,在水分受限的情况下,谷物填充过程受到基质利用率低和水槽合成能力降低的限制。这些结果增加了水分胁迫引起的内源性ABA水平升高导致谷物生长减少的可能性。

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